module __float64__floor_daz( input wire [63:0] f, output wire [63:0] out ); function automatic priority_sel_1b_2way (input reg [1:0] sel, input reg case0, input reg case1, input reg default_value); begin casez (sel) 2'b?1: begin priority_sel_1b_2way = case0; end 2'b10: begin priority_sel_1b_2way = case1; end 2'b00: begin priority_sel_1b_2way = default_value; end default: begin // Propagate X priority_sel_1b_2way = 1'dx; end endcase end endfunction function automatic [10:0] priority_sel_11b_2way (input reg [1:0] sel, input reg [10:0] case0, input reg [10:0] case1, input reg [10:0] default_value); begin casez (sel) 2'b?1: begin priority_sel_11b_2way = case0; end 2'b10: begin priority_sel_11b_2way = case1; end 2'b00: begin priority_sel_11b_2way = default_value; end default: begin // Propagate X priority_sel_11b_2way = 11'dx; end endcase end endfunction wire [10:0] f_bexp__2; wire [10:0] exp__1; wire literal_872; wire [51:0] tuple_index_873; wire [51:0] fractional_mask__1; wire [10:0] literal_875; wire eq_878; wire [52:0] fraction_up__2; wire and_reduce_887; wire f_sign__1; wire [10:0] EXPR_MASK; wire [51:0] f_fraction__1; wire [51:0] fraction_integral__2; wire [51:0] fraction_integral__4; wire [10:0] sign_ext_898; wire eq_899; wire eq_900; wire ult_908; wire [10:0] add_911; wire nor_914; wire [51:0] sel_915; wire [63:0] tuple_931; assign f_bexp__2 = f[62:52]; assign exp__1 = f_bexp__2 + 11'h401; assign literal_872 = 1'h0; assign tuple_index_873 = f[51:0]; assign fractional_mask__1 = {{21{exp__1[10]}}, exp__1} >= 32'h0000_0034 ? 52'h0_0000_0000_0000 : 52'hf_ffff_ffff_ffff >> {{21{exp__1[10]}}, exp__1}; assign literal_875 = 11'h000; assign eq_878 = f_bexp__2 == literal_875; assign fraction_up__2 = {literal_872, tuple_index_873} + {literal_872, fractional_mask__1}; assign and_reduce_887 = &f_bexp__2[9:0]; assign f_sign__1 = f[63:63]; assign EXPR_MASK = 11'h7ff; assign f_fraction__1 = tuple_index_873 & {52{~eq_878}}; assign fraction_integral__2 = ~(~tuple_index_873 | fractional_mask__1); assign fraction_integral__4 = ~(~fraction_up__2[51:0] | fractional_mask__1); assign sign_ext_898 = {11{f_sign__1}}; assign eq_899 = f_bexp__2 == EXPR_MASK; assign eq_900 = f_fraction__1 == 52'h0_0000_0000_0000; assign ult_908 = f_bexp__2 < 11'h433; assign add_911 = f_bexp__2 + ({10'h000, fraction_up__2[52]} & sign_ext_898); assign nor_914 = ~(~eq_899 | eq_900); assign sel_915 = ult_908 ? (f_sign__1 ? fraction_integral__4 : fraction_integral__2) & {52{f_bexp__2[10] | and_reduce_887}} : tuple_index_873; assign tuple_931 = {~(nor_914 | ~f_sign__1), priority_sel_11b_2way({eq_878, eq_899}, EXPR_MASK, literal_875, ult_908 ? (~(f_bexp__2[10] | and_reduce_887) ? {literal_872, sign_ext_898[9:0]} : add_911) : f_bexp__2), {priority_sel_1b_2way({eq_878 | eq_899 & eq_900, nor_914}, 1'h1, literal_872, sel_915[51]), sel_915[50:0] & {51{~(eq_878 | eq_899)}}}}; assign out = tuple_931; endmodule